Laboratory of Molecular Biology, University of Wisconsin, Madison, WI, 53706, USA.
J Membr Biol. 2010 Mar;234(1):13-27. doi: 10.1007/s00232-010-9235-8. Epub 2010 Feb 23.
Rhizobium etli is equipped with several systems to handle both hyper- and hypo-osmotic stress. For adaptation to hypo-osmotic stress, R. etli possesses a single gene with clear homology to MscS, four MscS-like channels and one ortholog of MscL (ReMscL, identity approximately 44% compared to Escherichia coli MscL). We subcloned and expressed the ReMscL channel ortholog from R. etli in E. coli to examine its activity by patch clamp in giant spheroplasts and characterized it at the single-channel level. We obtained evidence that ReMscL prevents the lysis of E. coli null mutant log-phase cells upon a rapid, osmotic downshock and identified a slight pH dependence for ReMscL activation. Here, we describe the facilitation of ReMscL activation by arachidonic acid (AA) and a reversible inhibitory effect of Gd(3+). The results obtained in these experiments suggest a stabilizing effect of micromolar AA and traces of Gd(3+) ions in the partially expanded conformation of the protein. Finally, we discuss a possible correlation between the number of gene paralogs for MS channels and the habitats of several microorganisms. Taken together, our data show that ReMscL may play an important role in free-living rhizobacteria during hypo-osmotic shock in the rhizosphere.
根瘤菌 (Rhizobium etli) 配备了多种系统来应对高渗和低渗应激。为了适应低渗应激,R. etli 拥有一个与 MscS 具有明显同源性的单一基因,四个 MscS 样通道和一个 MscL 的同源物 (ReMscL,与大肠杆菌 MscL 的同一性约为 44%)。我们从小牛链球菌中克隆并表达了 ReMscL 通道同源物,并用膜片钳技术在巨大的原生质体中检测其活性,并在单通道水平上对其进行了表征。我们获得的证据表明,ReMscL 可防止大肠杆菌突变株对数期细胞在快速渗透压下降时破裂,并确定 ReMscL 激活对 pH 值有轻微的依赖性。在这里,我们描述了花生四烯酸 (AA) 对 ReMscL 激活的促进作用以及 Gd(3+) 的可逆抑制作用。这些实验结果表明,AA 的微摩尔浓度和痕量 Gd(3+) 离子对蛋白质的部分扩展构象具有稳定作用。最后,我们讨论了 MS 通道基因的基因数与几种微生物的栖息地之间的可能相关性。总之,我们的数据表明,ReMscL 在根际低渗冲击期间,可能在自由生活的根瘤菌中发挥重要作用。